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首页> 外文期刊>The journal of immunology >MASP-1 and MASP-2 Do Not Activate Pro–Factor D in Resting Human Blood, whereas MASP-3 Is a Potential Activator: Kinetic Analysis Involving Specific MASP-1 and MASP-2 Inhibitors
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MASP-1 and MASP-2 Do Not Activate Pro–Factor D in Resting Human Blood, whereas MASP-3 Is a Potential Activator: Kinetic Analysis Involving Specific MASP-1 and MASP-2 Inhibitors

机译:MASP-1和MASP-2不会激活人类血液中的促D因子,而MASP-3是潜在的激活剂:涉及特定MASP-1和MASP-2抑制剂的动力学分析

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It had been thought that complement factor D (FD) is activated at the site of synthesis, and only FD lacking a propeptide is present in blood. The serum of mannose-binding lectin–associated serine protease (MASP)-1/3(?/?) mice contains pro-FD and has markedly reduced alternative pathway activity. It was suggested that MASP-1 and MASP-3 directly activate pro-FD; however, other experiments contradicted this view. We decided to clarify the involvement of MASPs in pro-FD activation in normal, as opposed to deficient, human plasma and serum. Human pro-FD containing an APPRGR propeptide was produced in insect cells. We measured its activation kinetics using purified active MASP-1, MASP-2, MASP-3, as well as thrombin. We found all these enzymes to be efficient activators, whereas MASP proenzymes lacked such activity. Pro-FD cleavage in serum or plasma was quantified by a novel assay using fluorescently labeled pro-FD. Labeled pro-FD was processed with t1/2s of ~3 and 5 h in serum and plasma, respectively, showing that proteolytic activity capable of activating pro-FD exists in blood even in the absence of active coagulation enzymes. Our previously developed selective MASP-1 and MASP-2 inhibitors did not reduce pro-FD activation at reasonable concentration. In contrast, at very high concentration, the MASP-2 inhibitor, which is also a poor MASP-3 inhibitor, slowed down the activation. When recombinant MASPs were added to plasma, only MASP-3 could reduce the half-life of pro-FD. Combining our quantitative data, MASP-1 and MASP-2 can be ruled out as direct pro-FD activators in resting blood; however, active MASP-3 is a very likely physiological activator.
机译:已经认为补体因子D(FD)在合成部位被激活,并且血液中仅存在缺乏前肽的FD。与甘露糖结合的凝集素相关的丝氨酸蛋白酶(MASP)-1/3(β/β)小鼠的血清含有pro-FD,并且其替代途径的活性明显降低。有人建议MASP-1和MASP-3直接激活pro-FD。但是,其他实验与此观点相矛盾。我们决定澄清在正常人血浆和血清中,相对于正常人血浆和血清而言,MASP与前FD激活有关。在昆虫细胞中产生了含有APPRGR前肽的人pro-FD。我们使用纯化的活性MASP-1,MASP-2,MASP-3和凝血酶测量了其激活动力学。我们发现所有这些酶都是有效的激活剂,而MASP酶缺乏这种活性。通过使用荧光标记的pro-FD的新型测定法定量测定血清或血浆中的Pro-FD裂解。标记的pro-FD分别在血清和血浆中经过t1 / 2s的〜3和5 h处理,表明即使没有活性凝结酶,血液中仍存在能够激活pro-FD的蛋白水解活性。我们以前开发的选择性MASP-1和MASP-2抑制剂在合理浓度下并未降低pro-FD的活化。相反,在非常高的浓度下,MASP-2抑制剂(也是一种不良的MASP-3抑制剂)会减慢激活速度。当将重组MASP加到血浆中时,只有MASP-3可以减少pro-FD的半衰期。结合我们的定量数据,可以排除MASP-1和MASP-2作为静息血液中的直接前FD激活剂。但是,活性MASP-3是非常可能的生理活化剂。

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